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Human physiological and metabolic responses to an attempted winter crossing of Antarctica: the effects of prolonged hypobaric hypoxia.

机译:人类对南极洲冬季越境的生理和代谢反应:长期低压缺氧的影响。

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摘要

An insufficient supply of oxygen to the tissues (hypoxia), as is experienced upon high‐altitude exposure, elicits physiological acclimatization mechanisms alongside metabolic remodeling. Details of the integrative adaptive processes in response to chronic hypobaric hypoxic exposure remain to be sufficiently investigated. In this small applied field study, subjects (n = 5, male, age 28–54 years) undertook a 40 week Antarctica expedition in the winter months, which included 24 weeks residing above 2500 m. Measurements taken pre‐ and postexpedition revealed alterations to glucose and fatty acid resonances within the serum metabolic profile, a 7.8 (±3.6)% increase in respiratory exchange ratio measured during incremental exercise (area under curve, P > 0.01, mean ± SD) and a 2.1(±0.8) % decrease in fat tissue (P < 0.05) postexpedition. This was accompanied by an 11.6 (±1.9) % increase (P > 0.001) in VO2 max corrected to % lean mass postexpedition. In addition, spine bone mineral density and lung function measures were identified as novel parameters of interest. This study provides, an in‐depth characterization of the responses to chronic hypobaric hypoxic exposure in one of the most hostile environments on Earth.
机译:高海拔暴露给组织提供的氧气不足(缺氧),会引起生理适应机制以及代谢重塑。应对慢性低压缺氧暴露的综合适应性过程的细节仍有待充分研究。在这项小型的应用研究中,对象(n = 5,男性,28-54岁)在冬季进行了40周的南极探险,其中包括居住在2500 m以上的24周。探险前和探险后进行的测量表明,血清代谢谱中的葡萄糖和脂肪酸共振发生了变化,在增量运动期间测得的呼吸交换率增加了7.8(±3.6)%(曲线下面积,P> 0.01,平均值±SD)和探险后脂肪组织减少2.1(±0.8)%(P <0.05)。这伴随着最大摄氧量增加11.6(±1.9)%(P> 0.001),校正为实验后瘦体重百分数。此外,脊柱骨矿物质密度和肺功能的措施被确定为感兴趣的新参数。这项研究提供了对地球上最不利的环境之一中对慢性低压缺氧暴露的反应的深入表征。

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